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In Vitro Tumor Cell Rechallenge For Predictive Evaluation of Chimeric Antigen Receptor T Cell Antitumor Function
Published on: February 27, 2019
NK Cells Expressing a Chimeric Activating Receptor Eliminate MDSCs and Rescue Impaired CAR-T Cell Activity against
Robin Parihar1,2, Charlotte Rivas3,2, Mai Huynh3
1Center for Cell and Gene Therapy, Texas Children's Hospital, Houston Methodist Hospital, and Baylor College of Medicine, Houston, Texas. rxpariha@txch.org.
Abstract:
Solid tumors are refractory to cellular immunotherapies in part because they contain suppressive immune effectors such as myeloid-derived suppressor cells (MDSCs) that inhibit cytotoxic lymphocytes. Strategies to reverse the suppressive tumor microenvironment (TME) should also attract and activate immune effectors with antitumor activity. To address this need, we developed gene-modified natural killer (NK) cells bearing a chimeric receptor in which the activating receptor NKG2D is fused to the cytotoxic ζ-chain of the T-cell receptor (NKG2D.ζ). NKG2D.ζ-NK cells target MDSCs, which overexpress NKG2D ligands within the TME. We examined the ability of NKG2D.ζ-NK cells to eliminate MDSCs in a xenograft TME model and improve the antitumor function of tumor-directed chimeric antigen receptor (CAR)-modified T cells. We show that NKG2D.ζ-NK cells are cytotoxic against MDSCs, but spare NKG2D ligand-expressing normal tissues. NKG2D.ζ-NK cells, but not unmodified NK cells, secrete proinflammatory cytokines and chemokines in response to MDSCs at the tumor site and improve infiltration and antitumor activity of subsequently infused CAR-T cells, even in tumors for which an immunosuppressive TME is an impediment to treatment. Unlike endogenous NKG2D, NKG2D.ζ is not susceptible to TME-mediated downmodulation and thus maintains its function even within suppressive microenvironments. As clinical confirmation, NKG2D.ζ-NK cells generated from patients with neuroblastoma killed autologous intratumoral MDSCs capable of suppressing CAR-T function. A combination therapy for solid tumors that includes both NKG2D.ζ-NK cells and CAR-T cells may improve responses over therapies based on CAR-T cells alone.
Insights
Engineered natural killer (NK) cells targeting myeloid-derived suppressor cells (MDSCs) can overcome the suppressive tumor microenvironment (TME). This approach enhances chimeric antigen receptor (CAR)-T cell therapy efficacy for solid tumors.
Area of Science:
- Immunology
- Oncology
- Cell Therapy
Background:
- Solid tumors resist cellular immunotherapies due to suppressive immune cells like myeloid-derived suppressor cells (MDSCs) within the tumor microenvironment (TME).
- Effective strategies must reverse TME suppression and activate anti-tumor immune responses.
Purpose of the Study:
- To develop gene-modified natural killer (NK) cells (NKG2D.ζ-NK cells) engineered to target and eliminate MDSCs.
- To evaluate the efficacy of NKG2D.ζ-NK cells in combination with chimeric antigen receptor (CAR)-T cells for solid tumor immunotherapy.
Main Methods:
- Development of NKG2D.ζ-NK cells, a chimeric receptor fusing NKG2D to the T-cell receptor ζ-chain, to target NKG2D ligand-expressing MDSCs.
- Assessment of NKG2D.ζ-NK cell cytotoxicity against MDSCs in a xenograft TME model.
- Evaluation of the impact of NKG2D.ζ-NK cells on the infiltration and anti-tumor activity of subsequently administered CAR-T cells.
Main Results:
- NKG2D.ζ-NK cells demonstrated specific cytotoxicity against MDSCs while sparing normal tissues expressing NKG2D ligands.
- NKG2D.ζ-NK cells secreted pro-inflammatory cytokines and chemokines, enhancing CAR-T cell infiltration and anti-tumor function in an immunosuppressive TME.
- Unlike endogenous NKG2D, NKG2D.ζ function remained effective within suppressive microenvironments, and patient-derived NKG2D.ζ-NK cells eliminated autologous intratumoral MDSCs.
Conclusions:
- NKG2D.ζ-NK cells represent a promising strategy to overcome TME-mediated immune suppression in solid tumors.
- Combination therapy with NKG2D.ζ-NK cells and CAR-T cells may significantly improve treatment responses compared to CAR-T cell monotherapy.
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